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豚鼠中硫酸雌酮(35S)钠的代谢

Metabolism of sodium oestrone ( 35 S) sulphate in the guinea pig.

作者信息

Dolly J O, Curtis C G, Dodgson K S, Rose F A

出版信息

Biochem J. 1972 Jun;128(2):347-52. doi: 10.1042/bj1280347.

Abstract

Intraperitoneal administration of sodium oestrone [(35)S]sulphate to male and female free-ranging guinea pigs is followed by excretion of most of the radioactivity mainly as inorganic [(35)S]sulphate in the urine within 72h. The remainder of the radioactivity in the urine was found in oestrone [(35)S]sulphate, two unidentified metabolites (A and B) and traces of oestradiol-17beta 3-[(35)S]sulphate. When injected intraperitoneally into animals with bile-duct and bladder cannulae, most of the dose was excreted in the bile. Unchanged oestrone [(35)S]sulphate was the main biliary component excreted in males and females, but the latter also excreted appreciable amounts of oestradiol-17beta 3-[(35)S]sulphate and metabolites A and B. The urine from these animals also contained these metabolites, inorganic [(35)S]sulphate and also oestrone [(35)S]sulphate, but in small amounts. Metabolite A was present only in samples from males. Whole body radioautography pinpointed the liver and kidney as the possible sites of metabolism of the ester. The ester underwent little desulphation in the isolated perfused female guinea-pig liver and in animals in which kidney function had been eliminated, and was excreted unchanged in the bile. These results and the observed low oestrogen sulphatase and arylsulphatase C activities found in guinea-pig liver and kidney support the view that the two enzymes are identical.

摘要

给雄性和雌性自由放养的豚鼠腹腔注射硫酸雌酮[(35)S]后,大部分放射性物质在72小时内主要以无机[(35)S]硫酸盐的形式随尿液排出。尿液中其余的放射性物质存在于硫酸雌酮[(35)S]、两种未鉴定的代谢物(A和B)以及痕量的17β-雌二醇3- [(35)S]硫酸盐中。当将其腹腔注射到装有胆管和膀胱插管的动物体内时,大部分剂量经胆汁排出。未变化的硫酸雌酮[(35)S]是雄性和雌性动物胆汁中排出的主要成分,但雌性动物还排出了相当数量的17β-雌二醇3- [(35)S]硫酸盐以及代谢物A和B。这些动物的尿液中也含有这些代谢物、无机[(35)S]硫酸盐以及硫酸雌酮[(35)S],但含量较少。代谢物A仅存在于雄性动物的样本中。全身放射自显影确定肝脏和肾脏可能是该酯代谢的部位。在离体灌注的雌性豚鼠肝脏以及肾功能已被消除的动物中,该酯很少发生脱硫反应,并以未变化的形式经胆汁排出。这些结果以及在豚鼠肝脏和肾脏中观察到的低雌激素硫酸酯酶和芳基硫酸酯酶C活性支持了这两种酶相同的观点。

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